Overview

This course develops smart-system and automation thinking. Students organize reusable logic, combine sensors with truth tables and state machines, improve reliability with averaging and hysteresis, and use advanced magnetic, optical, motion, environmental, and relay modules. Safety, validation, and evidence are central throughout the grade

By

karam tfaily

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Grade 6 – Robotics – Instructor

Category:

0
23

Enrollments

Level

All Levels

Time to Complete:

0 hour 0 minute

Lessons:

32

Certificate:

No

One-time for 1 person

$1,000.00$999.00

Overview

This course develops smart-system and automation thinking. Students organize reusable logic, combine sensors with truth tables and state machines, improve reliability with averaging and hysteresis, and use advanced magnetic, optical, motion, environmental, and relay modules. Safety, validation, and evidence are central throughout the grade

What You’ll Learn?

Understand how complete robotic systems combine inputs, processing, and outputs
Develop stronger programming skills for Arduino-compatible robotics systems
Use digital and analog sensors to collect and interpret information from the environment
Apply programming logic to make robotic systems respond to sensor conditions
Control motors, LEDs, buzzers, and other actuators to create purposeful actions
Combine multiple sensors and components into integrated robotic systems
Use variables, conditions, loops, and logical sequences to create more sophisticated programs
Understand how sensor data can be used to control robotic behavior
Design and build functional robotic solutions for practical challenges
Develop systematic debugging and troubleshooting strategies
Test robotic systems, identify weaknesses, and improve their performance
Apply engineering design thinking through hands-on robotics projects
Develop creativity, computational thinking, teamwork, and problem-solving skills

Requirements

Basic Arduino/robotics experience is recommended
Basic programming concepts are recommended
Access to an Arduino-compatible UNO robotics kit and computer
Students should follow the engineering development process:
Understand → Design → Connect → Program → Test → Debug → Improve → Share
Students should identify the relationship between:
Sensors → Processing → Decision → Actuator
Students should test individual components before integrating them into complete systems
Students should carefully check wiring, sensor readings, program logic, and component behavior when troubleshooting
Students should document their circuits, code, testing results, and design improvements
Students should safely handle electronic components and robotics equipment

Syllabus Overview

32

Lessons

0

Quizzes

0

Tasks

0

Resources

Introduction

Projects

Material Includes

Arduino-compatible UNO robotics board
Easy Plug / Keyestudio UNO robotics kit
Digital and analog sensors
Motors and other actuators
LEDs, buttons, buzzers, and electronic components
Arduino-compatible programming environment
Sensor integration activities
Programming and robotics challenges
Circuit connection and wiring resources
Project development activities
Testing and troubleshooting resources
Project documentation and reflection activities
Assessment and project evaluation resources

Instructor(s)

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